Area of research
Environmental Engineering · Pollution
Research interest
Research interests include Albedo (alchemy), Materials science, Environmental science, Cement, Compressive strength, and Biochar.
Biochar-enhanced concrete mixes: Pioneering multi-objective optimization
Effect of Biochar Dosage and Fineness on the Mechanical Properties and Durability of Concrete
Enhancing road performance of lead-contaminated soil through biochar-cement solidification: An experimental study
Enhancing Biochar Impact on the Mechanical Properties of Cement-Based Mortar: An Optimization Study Using Response Surface Methodology for Particle Size and Content
A review on the influencing factors of pavement surface temperature
Substrate modified with biochar improves the hydrothermal properties of green roofs
Evaluation of pervious concrete performance with pulverized biochar as cement replacement
Biochar from waste biomass as hygroscopic filler for pervious concrete to improve evaporative cooling performance
Evaluation of the properties and carbon sequestration potential of biochar-modified pervious concrete
Biochar as a Partial Cement Replacement Material for Developing Sustainable Concrete: An Overview
Properties of cement mortar containing pulverized biochar pyrolyzed at different temperatures
A side by side comparison of the cooling effect of building blocks with retro-reflective and diffuse-reflective walls
Theory and procedure for measuring the albedo of a roadway embankment
The amplitude and maximum of daily pavement surface temperature increase linearly with solar absorption
The albedo of crushed-rock layers and its implication to cool roadbeds in permafrost regions
Painting the roadway embankment with non-white high reflective pigments to raise the albedo
Experimental study on the solar reflectance of crushed rock layer with different sizes
Theory and procedure for measuring the solar reflectance of urban prototypes
Increasing the southern side-slope albedo remedies thermal asymmetry of cold-region roadway embankments
Shading boards with smaller lower-surface thermal emissivity perform better cooling effect